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SEMP Generator – Trip to Korea

SEMP Generator – Trip to Korea

Free energy from Korea – this is what we saw

Reinhard Wirth, gehtanders.de (German)

The congresses of Jupiter-Verlag are usually full of surprises, because the short descriptions of the speakers’ topics usually only hint at what is coming. It is different with the “surprise guest”, which has now become customary and about whom nothing is known in advance. So it was at the last congress in Stuttgart from 21 to 23 June 2024. A delegation of seven people from South Korea was announced and went on stage. They introduced themselves as employees of the SEMP Group from Seoul, who had been working since 2017 on a generator that was now finished. More output than input! Overunity! 1769% efficiency! Great astonishment in the audience. Was that possible? gehtanders.de, © SEMP visits the congress in Stuttgart

Source: gehtanders.de, © SEMP visits the congress in Stuttgart

The sensation was perfect – free energy was now within reach

This novel generator, which the Koreans call AISEG (Artificial Intelligence Smart Electric Generator), promises, by means of a special technique, to provide more electrical energy at the output than is needed to run the generator.

Something we had previously considered impossible, since the law of conservation of energy stands against it like a big question mark. Our blog and the NET-Journal have reported on it several times (see below). So we decided, as an eleven-strong group of experts with swarm intelligence, to travel to Korea and visit the SEMP Group. We had to take a very close look at this.

gehtanders.de, © Not yet a prototype, SEMP's AISEG generator

Source: gehtanders.de, © Not yet a prototype, SEMP’s AISEG generator

Once around the world with pockets full of money

Of course, investors or intermediaries were also on the team, along with plenty of expertise from electrical engineers who intended to carry out all kinds of measurements on site.

It had been agreed in advance that a calorimetric test would be carried out, and it was. It is simply essential to confirm the claim “more output than input” 100% before any money flows. To understand what we saw and measured, I would like to go into the four phases of an invention.

gehtanders.de, © Measurements on the device at SEMP, Korea

Source: gehtanders.de, © Measurements on the device at SEMP, Korea

The four development phases before market maturity

Source: text extract from “Analyse von Entwicklungsphasen technischer Neuerungen” (Analysis of the development phases of technical innovations, German) by Manfred Lahner, Erhard Ulrich

1: Basic phase

The first phase begins with the emergence of an idea or the discovery of a phenomenon, usually of a scientific-technical nature. The innovation is mentioned in the literature. The rediscovery of a forgotten effect or system can also be assigned to phase 1 as a sign of a new beginning. During phase 1 a solution is sought more or less systematically. The objective is vague. Ideas are produced on a large scale, varying greatly in their fruitfulness for future development. Essential foundations of the innovation are found. Important additional foundations are worked out. It is a phase of tinkering and trying, and of attempts to realise the ideas. gehtanders.de, © Measurement results on the Hioki data logger

Source: gehtanders.de, © Measurement results on the Hioki data logger

2: Invention phase

The second phase begins with the emergence and elaboration of a promising idea. The work is then usually carried out according to plan. A model is made, a trial run carried out. The idea is presented in concrete form as material, substance, arrangement, system, etc. It is a phase of selecting ideas and realising them. The results worked out in stage 1 are combined into a test installation (prototype or similar). This phase usually also includes activity in the field of patents. Patents are applied for, patents are granted, the discussion about property rights and licences begins. This phase usually ends with the concrete, realised invention.

gehtanders.de, © Presentation and history of SEMP

Source: gehtanders.de, © Presentation and history of SEMP

3: Innovation phase

The third phase comprises the exploitation and evaluation of the ideas. The invention is developed further and completed. There is a clear performance target. The result of the innovation appears economically usable on a larger scale. Industrial production and exploitation begin, sales appear assured, demand appears to exist, and areas of application are not only conceivable but already recognisable.

The third phase ends when the general breakthrough of the innovation has taken place. Broad penetration of the market begins.

gehtanders.de, © Coil formers, various models

Source: gehtanders.de, © Coil formers, various models

4: Application phase

The fourth phase could also be called the consolidation phase.

During this phase, industries, economic sectors, associations, institutions, cartels, training centres and opportunities for exchanging experience on a broad level through trade fairs, conferences and the like are formed. Ultimately, professions and occupations develop from individual activities and combinations of different elements of activity.

gehtanders.de, © Discussion of the measurement results

Source: gehtanders.de, © Discussion of the measurement results

Where does SEMP stand?

In short, our group came to a different assessment from the Koreans. While they believed themselves already in phase 3, we could not yet confirm on the basis of our measurements that the generator delivers what it promises. The decisive factor in our criticism was the use of lithium-ion batteries as storage for feeding back the generated electrical energy, because measurements showed that a lot of reactive current was evidently involved. According to SEMP, the use of a battery was admittedly only a stopgap at the time of our visit, since supercapacitors had already been relied on in invention phase 2 but unfortunately none were available in the laboratory at the time. In short, the battery discharged faster than it was recharged, and the system became extremely hot. With supercapacitors this would not happen, we were told. That was the state of affairs in August 2024.

Guangdong, China, supercapacitor

Source: Guangdong, China, supercapacitor

The downgrade

If you are in phase 3, you usually have a fully functioning prototype tested over the long term, which really only lacks an industrial design and approvals for the markets. After our team had measured, communicated and documented, it has to be said that this invention is still stuck between phase 1 and 2. We therefore set out our technical proposals and obtained a commitment from SEMP to document the original expectation by video stream after implementation (the use of supercapacitors). Then another team of experts will travel to South Korea again to measure once more.

gehtanders.de, © Team of experts in Korea

Source: gehtanders.de, © Team of experts in Korea

Based on varied experience with other inventions, there is justified hope within our community that it will turn out this way. The expectation goes so far that, in due course, SEMP wants to bring a generator to our team in Europe, where it will then run continuously for 24 hours. Be sure to also read the travel report (German) from the NET-Journal by Adolf and Inge Schneider.

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More on the topic (German)

Original article on my website (German)

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